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Electromagnetic hybrid active-passive vehicle suspension system

机译:电磁混合动力主动-被动车辆悬架系统

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摘要

The suspension systems currently in use can be classified as passive, semi-active and active. The passive suspension systems are the most commonly used due to their low price and high reliability. However, this system can not assure the desired performance from a modem suspension system An important improvement of the suspension performance is achieved by the active systems. Nevertheless, they are only used in a very reduced number of automobile models because they are expensive and complex. Another disadvantage of active systems is the relatively high energy consumption. The use of electromagnetic linear actuators is an alternative for the implementation of active suspensions. Moreover, this solution has the advantage of the suspension energy recovery. In spite of the materials development, the electromagnetic actuators are yet expensive to produce. In this paper it is proposed an hybrid suspension system which combines the simplicity of the passive dampers with the performance of an electromagnetic active suspension. Maintaining the passive damper, it is possible to keep the performance of the active suspension, but using a smaller electromagnetic actuator.
机译:当前使用的悬架系统可以分为被动,半主动和主动。被动悬挂系统由于价格低廉和可靠性高而最常用。但是,该系统不能确保调制解调器悬挂系统具有所需的性能。有源系统可以实现悬挂性能的重要改进。然而,由于它们昂贵且复杂,它们仅用于数量很少的汽车模型中。有源系统的另一个缺点是能耗较高。电磁线性致动器的使用是实现主动悬架的一种替代选择。此外,该解决方案具有悬浮能量回收的优点。尽管进行了材料开发,但是电磁致动器的生产仍然昂贵。在本文中,提出了一种混合悬挂系统,该系统将无源阻尼器的简单性与电磁有源悬挂的性能相结合。维护被动减震器,可以保持主动悬架的性能,但可以使用较小的电磁执行器。

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